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Design and implementation of a switched capacitor-based embedded hybrid DC-DC converter

机译:基于开关电容器的嵌入式混合DC-DC转换器的设计与实现

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Here, we propose an integrated hybrid DC-DC converter suitable for high dropout energy conscious applications. In the hybrid converter topology, along with a linear regulator two switched capacitors are used to store and recycle charge for better power efficiency. Without significant power loss the switched capacitors step down the supply voltage for the linear regulator working in low drop-out mode. The linear regulator, on the other hand, attenuates the voltage ripple that originates from the switched capacitors converter on its power supply rejection ratio. It also helps for line and load regulation. Additionally, a synthesised counter ripple is injected through the linear regulator to further reduce the output ripple. With these two techniques, for a moderate load current and an acceptable output ripple, the switching and load capacitors are reduced to a value which can be implemented within the chip. The proposed integrated converter circuit has been designed, implemented and tested in a 0.18 mm CMOS process for 3.3-1.3V conversion. With two switching capacitors of 210 pF each and 100 pF load capacitor, more than 13 mA of load current, measured peak-to-peak output voltage ripple is 146mV. The achieved measured power efficiency is 64.97%. Exhaustive silicon characterisation of the converter is done to observe the power efficiency and ripple variation at different frequency of operations.
机译:在这里,我们提出了一种集成的混合式DC-DC转换器,适用于对低压差敏感的应用。在混合转换器拓扑中,与线性稳压器一起使用两个开关电容器来存储和回收电荷,以提高功率效率。在没有明显功率损耗的情况下,开关电容器降低了工作在低压差模式下的线性稳压器的电源电压。另一方面,线性稳压器以其电源抑制比衰减源自开关电容器转换器的电压纹波。它还有助于线路和​​负载调节。另外,通过线性稳压器注入了合成的反纹波,以进一步减小输出纹波。通过这两种技术,为了获得适中的负载电流和可接受的输出纹波,开关电容器和负载电容器将减小到可以在芯片内实现的值。拟议的集成转换器电路已在0.18 mm CMOS工艺中设计,实施和测试,可进行3.3-1.3V转换。利用两个每个210 pF的开关电容器和100 pF负载电容器,超过13 mA的负载电流,测得的峰峰值输出电压纹波为146mV。实测功率效率为64.97%。对转换器进行了详尽的硅表征,以观察在不同工作频率下的功率效率和纹波变化。

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